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基于反芳香性二苯并戊搭烯的共轭纳米环聚合物用于有机电池中的电荷存储。

Conjugated Nanohoop Polymers based on Antiaromatic Dibenzopentalenes for Charge Storage in Organic Batteries.

作者信息

Seitz Philipp, Bhosale Manik, Rzesny Luisa, Uhlmann Anselm, Wössner Jan S, Wessling Robin, Esser Birgit

机构信息

Current address: Institute of Organic Chemistry II and Advanced Materials, Ulm University, Albert-Einstein-Allee 11, 89081, Ulm, Germany.

Institute of Organic Chemistry, University of Freiburg, Albertstraße 21, 79104, Freiburg, Germany.

出版信息

Angew Chem Int Ed Engl. 2023 Oct 23;62(43):e202306184. doi: 10.1002/anie.202306184. Epub 2023 Sep 13.

Abstract

With their bent π-systems, cyclic conjugation and inherent cavities, conjugated nanohoops are attractive for organic electronics applications. For ease of processing and morphological stability, an incorporation into polymers is desirable, but to date was hampered with few exceptions by synthetic difficulties. We herein present a unique strategy for the synthesis of conjugated nanohoop polymers using a dibenzo[a,e]pentalene (DBP) as central connector. We demonstrate this versatility by synthesizing three electronically diverse copolymers with dithienyldiketo(pyrrolopyrrol), fluorene and carbazole comonomers, and report the first donor-acceptor nanohoop polymer. Optoelectronic investigations reveal the prevalence of cyclic or linear conjugation, depending on the comonomer unit, and ambipolar electrochemical properties through the antiaromatic character of the DBP units. As the first report on using conjugated nanohoops for charge storage as positive electrode materials, we show a significant improvement in battery performance in a nanohoop-containing polymer compared to an equivalent nanohoop-free reference polymer. We believe this study will pave the way for the synthesis of a diverse range of nanohoop polymers and further stimulate their exploration for charge storage in batteries.

摘要

共轭纳米环具有弯曲的π体系、环状共轭结构和固有腔,在有机电子应用中颇具吸引力。为便于加工和保持形态稳定性,将其引入聚合物是很有必要的,但迄今为止,除了少数例外情况,合成困难阻碍了这一进程。我们在此提出一种独特的策略,以二苯并[a,e]戊搭烯(DBP)作为中心连接体来合成共轭纳米环聚合物。我们通过合成三种具有不同电子性质的共聚物,分别与二噻吩二酮基(吡咯并吡咯)、芴和咔唑共聚单体反应,展示了这种多功能性,并报道了首例供体-受体纳米环聚合物。光电研究表明,根据共聚单体单元的不同,环状或线性共轭普遍存在,并且通过DBP单元的反芳香性表现出双极性电化学性质。作为关于使用共轭纳米环作为正电极材料进行电荷存储的首次报道,我们发现与不含纳米环的等效参考聚合物相比,含纳米环聚合物的电池性能有显著提升。我们相信这项研究将为合成多种纳米环聚合物铺平道路,并进一步推动对其在电池电荷存储方面的探索。

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